日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Ginsenoside Re regulates PFKFB3-mediated glycolysis to inhibit endothelial cell migration to ameliorate atherosclerosis.

人参皂苷 Re 调节 PFKFB3 介导的糖酵解,抑制内皮细胞迁移,从而改善动脉粥样硬化。

Wang Zhihui, Mou Junyu, Han Wen, Liu Siyuan, Wang Min, Sun Guibo

Discovery and Evaluation of Novel Calenduloside E Derivatives Targeting HSP90β in Ox-LDL-Induced HUVECs Injury

发现和评价靶向 HSP90β 的新型金盏花苷 E 衍生物在 Ox-LDL 诱导的 HUVECs 损伤中的作用

Han, Fang; Fang, Huiqi; Li, Guangyu; Deng, Di; Sun, Guibo; Tian, Yu

RETREG1-mediated reticulophagy is activated by an ATF4-CEBPG/C/EBPγ heterodimer and confers protection against lipotoxicity.

RETREG1 介导的网状细胞吞噬作用由 ATF4-CEBPG/C/EBPγ 异二聚体激活,并能抵抗脂毒性。

Jin Suwei, Yan Mingzhu, Liu Yongguang, Zhang Shanshan, Song Hongbin, Cao Chenxi, Li Yujia, Sun Guibo, Ye Linhu, Chen Jianzhi, Han Wen, Li Lingyu, Chang Qi

Smart nanovehicles crossing the barricade: precision targeting of neuroinflammation for ischemic stroke diagnostics and therapeutics

智能纳米载体突破障碍:精准靶向神经炎症以用于缺血性中风的诊断和治疗

Sun, Shiyi; Ouyang, Qiuhong; Zhang, Shaochan; Li, Ruoyun; Zhang, Ni; Chen, Xinglv; Zhang, Yaqi; Xie, Haochen; Lang, Hui; Liu, Chunqi; Hou, Yi; Qin, Meng; Sun, Guibo

Corrigendum to "N-butylphthalide (NBP) and ligustrazine (TMP) triazole hybrids target the KEAP1-NRF2 pathway to inhibit ferroptosis and exert brain neuroprotectivity" [Redox Biol. 86, (2025), 103835]

对“N-丁基苯酞(NBP)和川芎嗪(TMP)三唑杂合物靶向KEAP1-NRF2通路以抑制铁死亡并发挥脑神经保护作用”的更正[Redox Biol. 86, (2025), 103835]

Li, Guangyu; Xiao, Haiyan; Zuo, Chenwei; Xie, Haochen; Wang, Xiaolin; Wang, Jiaxin; Liu, Ying; Hou, Quanxing; Sun, Guibo; Tian, Yu

N-butylphthalide (NBP) and ligustrazine (TMP) triazole hybrids target the KEAP1-NRF2 pathway to inhibit ferroptosis and exert brain neuroprotectivity.

N-丁基苯酞(NBP)和川芎嗪(TMP)三唑杂合物靶向KEAP1-NRF2通路,抑制铁死亡并发挥脑神经保护作用

Li Guangyu, Xiao Haiyan, Zuo Chenwei, Xie Haochen, Wang Xiaolin, Wang Jiaxin, Liu Ying, Hou Quanxing, Sun Guibo, Tian Yu

Correction: Zhou et al. Notoginsenoside R1 Ameliorates Diabetic Retinopathy through PINK1-Dependent Activation of Mitophagy. Cells 2019, 8, 213

更正:Zhou 等人,《人参皂苷 R1 通过 PINK1 依赖性线粒体自噬激活改善糖尿病视网膜病变》,Cells 2019, 8, 213

Zhou, Ping; Xie, Weijie; Meng, Xiangbao; Zhai, Yadong; Dong, Xi; Zhang, Xuelian; Sun, Guibo; Sun, Xiaobo

Correction: Ginsenoside compound K attenuates Ox-LDL-mediated macrophage inflammation and foam cell formation via autophagy induction and modulating NF-κB, p38, and JNK MAPK signaling

更正:人参皂苷化合物K通过诱导自噬和调节NF-κB、p38和JNK MAPK信号通路,减弱Ox-LDL介导的巨噬细胞炎症和泡沫细胞形成。

Lu, Shan; Luo, Yun; Sun, GuiBo; Sun, XiaoBo

Identification of Six Potential Therapeutic Targets Common to Ischemic Stroke and Vascular Dementia: Genetic Insights From an Integrated Bioinformatics Analysis

通过整合生物信息学分析,鉴定出缺血性卒中和血管性痴呆共有的六个潜在治疗靶点:遗传学见解

Lyu, Jian; Lin, Fa; Liu, Yi; Chai, Yan; Chen, Xiaolin; Wang, Min; Liu, Fumei; Xiao, Haiyan; Sun, Guibo; Xie, Yanming

Author Correction: Trib1 deficiency causes brown adipose respiratory chain depletion and mitochondrial disorder

作者更正:Trib1 缺陷会导致棕色脂肪组织呼吸链耗竭和线粒体功能紊乱。

Zhang, Xuelian; Zhang, Bin; Zhang, Chenyang; Sun, Guibo; Sun, Xiaobo